Biology · Environmental Studies
Microbiology and Nitrogen Cycle
1,029 Questions
This hub focuses on microbiology and the nitrogen cycle, covering essential concepts about bacteria and soil microbes. Topics include nitrogen fixation, bacterial structures, and soil microbial processes. These concepts are frequently tested in general science sections of various competitive exams.
Nitrogen fixing bacteriaGram-positive bacteriaBacterial flagellaDenitrifying bacteriaAmmonia conversion processBacterial resting spores
Microbiology and Nitrogen Cycle Questions
A prokaryotic autotrophic nitrogen fixing symbiont found in
C
Correct answer
Explanation
Cyanobacteria, which have "symbiotic" relationships with cycads are in the order Nostocales. Anabaena cycadeae is a blue green algae (BGA) commonly found in the coralloid roots of cycads. At first, the cycad sprouts without any cyanobacterium. Coralloid roots are formed soon after the primary root.
So answer is - 'Cycas'.
The most abundant prokaryotes helpful to humans in making curd from milk and in production of antibiotics are the ones categorised as
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Cyanobacteria
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Archaebacteria
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Chemosynthetic autotrophs
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Heterotrophic bacteria
D
Correct answer
Explanation
Heterotrophic bacteria require an organic carbon source for growth (i.e., they derive energy and carbon from organic compounds). Economically important uses of heterotrophic bacteria are:
- They enhance the fertility of the soil by nitrogen fixation.
- Production of curd and yogurt from milk, cheese, butter, wine
- Production of antibiotics
- They form an essential part of biogeochemical cycles during which they release essential elements, such as nitrogen and carbon for recycling.
- Cleaning of oil spills
So answer is - 'Heterotrophic bacteria'.
Bacteria which directly convert atmospheric nitrogen into nitrogen compounds are called as
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Denitrifying bacteria
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Putrefying bacteria
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Nitrogen fixing bacteria
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Nitrifying bacteria
C
Correct answer
Explanation
Bacteria which directly convert atmospheric nitrogen into nitrogen compounds are called nitrogen fixing bacteria. They could be symbiotic or free- living like Rhizobium and Azotobacter respectively.
So answer is -'Nitrogen fixing bacteria'.
A large number of organic compounds can be decomposed by
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Chemoorganotrophs
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Pseudomonas
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Acetobacter
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Mycoplasma
A
Correct answer
Explanation
A chemoorganotroph is an organism, that obtains energy from the oxidation of reduced organic compounds. The list of compounds from which chemoorganotrophic organisms can generate energy and their sources of carbon is very long, making these microorganisms extremely versatile. Two mechanisms for energy conservation are known for chemoorganotrophs: fermentation and respiration.
So answer is - 'Chemoorganotrophs'.
The bacteria which convert $NO _{3}\rightarrow $Free$NO _{2}$ are called as
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Nitrifying bacteria
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Ammonifying bacteria
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Denitrifying bacteria
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None of the above
C
Correct answer
Explanation
Denitrification is the biological conversion of nitrate to nitrogen gas, nitric oxide or nitrous oxide. These compounds are gaseous compounds and are not readily available for microbial growth; therefore they are typically released to the atmosphere. Denitrifiers belong to several genera including Pseudomonas,Bacillus, Spirillum, Hyphomicrobium, Propionobacterium, Cornebacterium, Thiobacillus, and Alcaligenes. Biological denitrification is an anaerobic respiration reaction in which nitrate is reduced. Denitrifying bacteria are aerobic autotrophs or heterotrophs that can switch to anaerobic growth when nitrate is used as an electron acceptor.
So, the answer is option C.
The function of leghaemoglobin in the root nodules of legumes is
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Expression of nif gene
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Inhibition of nitrogenase activity
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Oxygen removal
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Nodule differentiation
C
Correct answer
Explanation
Enzyme nitrogenase, that catalyses nitrogen fixation is oxygen labile. Leguminous plant proteins called leghaemoglobin act as oxygen scavenger facilitating Rhizobium in fixing nitrogen.
So answer is- 'Oxygen removal'.
_______ is a free-living $N _2$ -fixing aerobic bacterium.
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Rhodospirillum
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Azotobacter
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Clostridium
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Rhizobium
B
Correct answer
Explanation
Azotobacter is a well-known genus of free-living, aerobic, nitrogen-fixing bacteria found in soil.
Curing of tobacco is done by
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Micrococcus candicans
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Bacillus subtilis
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Bacillus megaterium
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Bacillus ramosus
C
Correct answer
Explanation
After tobacco has been harvested, it is necessary to cure it before consumption. Tobacco curing is also known as colour curing, because when tobacco leaves are cured, the intention is to change their colour and reduce their chlorophyll content. Bacillus megaterium is an endophyte and is a potential agent for the biocontrol of plant diseases.
Which bacteria are utilized in gobar gas plant?
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Methanogens
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Nitrifying bacteria
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Ammonifying bacteria
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Denitrifying bacteria
A
Correct answer
Explanation
Gobar gas is mixture of methane (CH$ _4$), carbon dioxide (CO$ _2$), hydrogen (H$ _2$) and hydrogen sulphide (H$ _2$S) with methane as major component (65%). Methanogens are anaerobic, autotrophic, eukaryote that converts carbon dioxide and hydrogen into methane gas. The hydrogen serves as electron donor for reduction of carbon dioxide. Thus, methogens produce gober gas by anerobic fermentation of biomass in presence of water. The chemolithotrophic bacteria that reduce the organic nitrogen into ammonia are termed as ammonifying bacteria. The chemolithotropic bacteria that converts ammonia NH$ _3$ into nitrates, NO$ _3$-, are termed as nitrifying bacteria; it includes Nitrosomonas and Nitrobacter. The chemolithotrophic bacteria that reduce the nitrates into nitrogen are termed as denitrifying bacteria. Ammonifying, nitrifying and denitrifying bacteria are component of nitrogen cycle and do not serve in gober gas (methane) production. Thus, the correct answer is option A.
Richest source of bacteria is
B
Correct answer
Explanation
Soil is the rich source of water and organic matter. Decomposition of remains of dead organisms adds organic content to the soil. Weathering of minerals add inorganic fraction of soil. Thus, soil fulfils the nutritional requirement of bacteria with diverse feeding habits and serves as richest source of bacteria. Since, bacteria can live on the surface of soil particles in form of biofilms which can be formed on almost any surface; thus type of soil does not affect the bacterial population. Option B is correct. Poor solubility of oxygen and limited penetration of sun light in water limits the distribution of majority of bacteria in limnetic and profundal zone which makes option C incorrect. Owing to extreme temperatures, chemical contamination, and low nutrient environments, air does not serve as good habitat for bacteria and thus, only thick walled resistant bacteria/bacterial structures like endopores are present in air; option A is incorrect. Despite providing favourable nutritional condition for bacterial growth, temperature variations in milk limit their growth. Option D is incorrect. Thus, the correct answer is option B.
The organisms participating most actively in nitrogen cycle in nature are
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Bacteria
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Legumes
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Parasitic algae
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Fungi
A
Correct answer
Explanation
Bacteria are the component of biological nitrogen fixation which included free living or non-symbiotic soil bacteria. It may be aerobic bacteria (Azotobacter spp), anaerobic bacteria (Clostridium spp), photosynthetic bacteria (Rhodospirillum spp), chemosynthetic bacteria (Thiobacillus spp) and blue-green algae. The finger-like projections on roots of legumes, termed as root nodules, carries Rhizobium bacteria which in turn are responsible for nitrogen fixation; legumes depend on of bacteria for nitrogen fixation. None of the parasitic algae or fungal species can fix nitrogen. Thus, the correct answer is option A.
A free living aerobic bacteria capable of fixing nitrogen is
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Azotobactor
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Rhizobium
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Clostridium botulinum
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Streptomyces
A
Correct answer
Explanation
Azotobacter is a free-living aerobic rod-shaped soil bacteria; it is a member of Gammaproteobacteria and fixes the atmospheric nitrogen into the useable form which makes option A correct. Rhizobium is a Gram-negative, motile, rod-shaped bacteria that forms special nitrogen-fixing organs, called as root nodules, in the roots of legumes and fix the gaseous nitrogen into ammonia. Option B is incorrect. Clostridium is an anaerobic free-living nitrogen fixer which makes option C incorrect. Streptomyces is filamentous free-living aerobic bacterium; S. thremoautotropicus have oxygen insensitive nitrogenase enzyme and ability to fix nitrogen. Since not all the Streptomyces spp can fix nitrogen, options D is incorrect.
Thus, the correct answer is option A.
Which of the following are useful activities of most of the bacteria?
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Nitrogen fixation
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Nitrification
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Operation of biogeochemicai cycles
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All of the above
D
Correct answer
Explanation
Nitrogen gas is converted to nitrate compounds by nitrogen fixing bacteria in soil or root nodules. The Haber process converts nitrogen gas into ammonia used in fertilizers. Ammonia is converted to nitrates by nitrifying bacteria in the soil. Bacteria of the genus Nitrosomonas oxidize NH$ _3$ to nitrites. Bacteria of the genus Nitrobacter oxidize the nitrites to nitrates. Urea and egested material is broken down by decomposers. This results in nitrogen being returned to the soil as ammonia. Decomposers also break down the bodies of dead organisms resulting in nitrogen being returned to the soil as ammonia. In some conditions denitrifying bacteria in the soil break down nitrates and return nitrogen to the air. Thus, it is summarized that the bacteria play a significant role in nitrogen fixation, nitrification and several other operations in all biogeochemical cycles.
Therefore, the correct answer is option D.
Which of the following considered as biofertilizer?
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Bacillus
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Polyporus
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Selaginella
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Azotobacter
D
Correct answer
Explanation
Biofertilizer is any living organism that imparts fertility to soil. Azotobacter is a free living aerobic rod shaped soil bacteria; it is a member of Gamma-proteobacteria and fix the atmospheric inter nitrogen into biologically usable ammonia and hence, serves as biofertilizer.
Bacillus is a denitrification bacteria that carry out the final step in returning nitrogen back to the atmospheric reservoir. They reduce the nitrates into nitrogen thereby removing nitrogen from soil.
Polyporus is a fungus which produces single cell protein; it does not add minerals/nutrients to soil.
Selaginella is a fern which is used as ornamental plant and does not serve as biofertilizer.
Thus, the correct answer is option D.
Nitrogen fixing bacteria converts
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N$ _2$ $\longrightarrow$ NH$ _3$
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NH$ _4^+$ $\longrightarrow$ Nitrates
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NO$ _2$ $\longrightarrow$ NO$ _3$
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NO$ _3$ $\longrightarrow$ N$ _2$
A
Correct answer
Explanation
- Conversion of atmospheric inert nitrogen into usable ammonia is termed as nitrogen fixation which is carried out by free-living symbiotic bacteria.
- They have a multisubunit enzyme complex, nitrogenase, which catalyzes the reduction of nitrogen to ammonia. The oxidation of ammonia (NH$ _4$) to nitrite (NO$ _2^-$) and finally to nitrate (NO$ _3^-$) is called as nitrification. It is carried out by nitrifying bacteria.
- Nitrifier bacteria, Nitrobacter and Nitrococcus, convert nitrite into nitrate. Denitrification bacteria carry out the final step in returning nitrogen back to the atmospheric reservoir. They reduce the nitrates into nitrogen.
Thus, the correct answer is option A.